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THz SPECTROSCOPY OF PROTEINS IN WATER: DIRECT ABSORPTION AND CIRCULAR DICHROISM

机译:水中蛋白质的太赫兹光谱:直接吸收和圆二色性

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摘要

Many of the functionally relevant collective vibrations of proteins and other biopolymers are expected to occur at terahertz frequencies. Precise absorption measurements combined with careful titration of biopolymers in water have allowed us to directly measure the terahertz absorption spectra associated with these motions, despite the strong background absorption of the solvent. We have also explored the circular dichroism spectroscopy of biomolecules over this same frequency range. Since circular dichroism requires the presence of net chirality in a molecule and chirality is present in nearly all biomaterial, it has the potential to capture the background free spectral features in biopolymers. To undertake these studies we have developed a broad band terahertz spectrometer suitable for both direct absorption and circular dichroism measurements of proteins in water between 0.75 - 3.72 THz. Direct terahertz absorption spectra of prototypical proteins bovine serum albumin (BSA) and hen egg white lysozyme have been documented and are described here. We have also successfully demonstrated the magnetic circular dichroism in semiconductors, and placed an upper bound on the terahertz circular dichroism signature of solvated BSA. In the terahertz frequency range, it appears that circular dichroism signatures are exceedingly small and detection remains a challenge.
机译:蛋白质和其他生物聚合物的许多功能上相关的集体振动有望在太赫兹频率下发生。精确的吸收测量加上在水中生物聚合物的小心滴定使我们能够直接测量与这些运动相关的太赫兹吸收光谱,尽管溶剂对背景的吸收很强。我们还研究了在相同频率范围内生物分子的圆二色光谱。由于圆二色性要求分子中存在净手性,并且几乎所有生物材料中都存在手性,因此它有可能捕获生物聚合物中的背景自由光谱特征。为了进行这些研究,我们开发了一种宽带太赫兹光谱仪,适用于0.75-3.72 THz之间的水中蛋白质的直接吸收和圆二色性测量。原型蛋白牛血清白蛋白(BSA)和鸡蛋清溶菌酶的直接太赫兹吸收光谱已被记录并在此处进行了描述。我们还成功地证明了半导体中的磁性圆二色性,并在溶剂化BSA的太赫兹圆二色性特征上设置了上限。在太赫兹频率范围内,似乎圆二色性信号非常小,检测仍然是一个挑战。

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